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Stability analysis of tire force distribution for multi-actuator electric vehicles using generalized frequency variable

机译:基于广义频率变量的多执行器电动汽车轮胎力分布稳定性分析

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Tire force distribution is an important topic in motion control of electric vehicles. For years, many researchers have focused on optimal distribution by minimizing a certain cost function. However, no effort has been paid to the stability analysis of tire force distribution theoretically. Let the actuators (in-wheel-motors and steering motors) be the local agents, the electric vehicle can be seen as a special type of multi-agent system. The agents are not decoupled but they physically interact with each other via the vehicle body. As the increasing of the actuator number, stability analysis becomes more and more complex. By modeling the EV system with generalized frequency variable, we propose a systematic scheme that can considerably reduce the burden of stability analysis for tire force distribution.
机译:轮胎力分布是电动汽车运动控制中的重要课题。多年来,许多研究人员一直致力于通过最小化某些成本函数来优化分配。但是,从理论上讲,没有对轮胎力分布的稳定性进行研究。假设执行器(轮毂电机和转向电机)是本地代理,则电动汽车可以看作是一种特殊的多代理系统。代理没有解耦,但是它们通过车身彼此物理地相互作用。随着执行器数量的增加,稳定性分析变得越来越复杂。通过用广义频率变量对电动汽车系统进行建模,我们提出了一种系统方案,该方案可以大大减轻轮胎力分布稳定性分析的负担。

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